Perturbation of nucleosome core structure by the SWI/SNF complex persists after its detachment, enhancing subsequent transcription factor binding
Open Access
- 28 April 1998
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 95 (9) , 4947-4952
- https://doi.org/10.1073/pnas.95.9.4947
Abstract
To investigate the mechanism of SWI/SNF action, we have analyzed the pathway by which SWI/SNF stimulates formation of transcription factor-bound nucleosome core complexes. We report here that the SWI/SNF complex binds directly to nucleosome cores and uses the energy of ATP hydrolysis to disrupt histone/DNA interactions, altering the preferred path of DNA bending around the histone octamer. This disruption occurs without dissociating the DNA from the surface of the histone octamer. ATP-dependent disruption of nucleosomal DNA by SWI/SNF generates an altered nucleosome core conformation that can persist for an extended period after detachment of the SWI/SNF complex. This disrupted conformation retains an enhanced affinity for the transcription factor GAL4-AH. Thus, ATP-dependent nucleosome core disruption and enhanced binding of the transcription factor can be temporally separated. These results indicate that SWI/SNF can act transiently in the remodeling of chromatin structure, even before interactions of transcription factors.Keywords
This publication has 39 references indexed in Scilit:
- SWI/SNF Stimulates the Formation of Disparate Activator-Nucleosome Complexes but Is Partially Redundant with Cooperative BindingJournal of Biological Chemistry, 1997
- Nucleosome Disruption by Human SWI/SNF Is Maintained in the Absence of Continued ATP HydrolysisJournal of Biological Chemistry, 1996
- Persistent Site-Specific Remodeling of a Nucleosome Array by Transient Action of the SWI/SNF ComplexScience, 1996
- DNA-binding properties of the yeast SWI/SNF complexNature, 1996
- RNA Polymerase II Holoenzyme Contains SWI/SNF Regulators Involved in Chromatin RemodelingCell, 1996
- Amino acid substitutions in the structured domains of histones H3 and H4 partially relieve the requirement of the yeast SWI/SNF complex for transcription.Genes & Development, 1995
- The SWI-SNF complex: a chromatin remodeling machine?Trends in Biochemical Sciences, 1995
- Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complexNature, 1994
- BRG1 contains a conserved domain of the SWI2/SNF2 family necessary for normal mitotic growth and transcriptionNature, 1993
- Evidence that SNF2/SWI2 and SNF5 activate transcription in yeast by altering chromatin structure.Genes & Development, 1992